Monolithically Integrated Michelson Interferometer Using an InGaAs/InAlAs Quantum Cascade Laser at λ = 4 µm

Author:

Hofstetter Daniel1ORCID,Beck Hans2,Bour David P.3

Affiliation:

1. Independent Researcher, Chemin du Château 5, 2068 Hauterive, Switzerland

2. Independent Researcher, Rue des Peupliers 6, 2014 Bôle, Switzerland

3. Google LLC, 1250 Reliance Way, Fremont, CA 94539, USA

Abstract

In the present article, we propose a monolithically integrated Michelson interferometer using a λ = 4 µm InGaAs/InAlAs quantum cascade laser as the light source. By using simple fringe detection and a four-point interpolation on each fringe, we will be able to detect minimal object displacements of 500 nm—corresponding to 25% of half the laser emission wavelength. Such an interferometric photonic integrated circuit has interesting applications for precision computerized numerical controlled machines. Since the industrial standard of such machines currently consists of glass-based linear encoders with a resolution of 5 µm, our interferometer-based system will enable an improvement of at least one order of magnitude.

Publisher

MDPI AG

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